BQ24014DRCR >
BQ24014DRCR
Texas Instruments
IC BATT CHG LI-ION 1CELL 10VSON
8834 Pcs New Original In Stock
Charger IC Lithium Ion/Polymer 10-VSON (3x3)
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BQ24014DRCR Texas Instruments
5.0 / 5.0 - (362 Ratings)

BQ24014DRCR

Product Overview

1259805

DiGi Electronics Part Number

BQ24014DRCR-DG

Manufacturer

Texas Instruments
BQ24014DRCR

Description

IC BATT CHG LI-ION 1CELL 10VSON

Inventory

8834 Pcs New Original In Stock
Charger IC Lithium Ion/Polymer 10-VSON (3x3)
CAD Models - PCB Symbols & Footprints
Quantity
Minimum 1

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In Stock (All prices are in USD)
  • QTY Target Price Total Price
  • 1 1.9238 1.9238
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BQ24014DRCR Technical Specifications

Category Power Management (PMIC), Battery Chargers

Manufacturer Texas Instruments

Packaging Cut Tape (CT) & Digi-Reel®

Series bqTINY™

Product Status Active

Battery Chemistry Lithium Ion/Polymer

Number of Cells 1

Current - Charging Constant - Programmable

Programmable Features Current, Timer

Fault Protection Short Circuit

Charge Current - Max 1A

Battery Pack Voltage 4.2V

Voltage - Supply (Max) 16.5V

Interface -

Operating Temperature -40°C ~ 125°C (TJ)

Mounting Type Surface Mount

Package / Case 10-VFDFN Exposed Pad

Supplier Device Package 10-VSON (3x3)

Base Product Number BQ24014

Datasheet & Documents

HTML Datasheet

BQ24014DRCR-DG

Environmental & Export Classification

RoHS Status ROHS3 Compliant
Moisture Sensitivity Level (MSL) 2 (1 Year)
REACH Status REACH Unaffected
ECCN EAR99
HTSUS 8542.39.0001

Additional Information

Other Names
TEXTISBQ24014DRCR
-296-18392-1-DG
-SN0312075DRCR
-BQ24014DRCRG4
-296-18392-1
-BQ24014DRCR-NDR
296-18392-6
-BQ24014DRCRG4-NDR
296-18392-1
2156-BQ24014DRCR
-SN0312075DRCR-NDR
296-18392-2
Standard Package
3,000

Alternative Parts

PART NUMBER
MANUFACTURER
QUANTITY AVAILABLE
DiGi PART NUMBER
UNIT PRICE
SUBSTITUTE TYPE
BQ24010DRCRG4
Texas Instruments
92261
BQ24010DRCRG4-DG
0.0192
Parametric Equivalent
BQ24013DRCRG4
Texas Instruments
19074
BQ24013DRCRG4-DG
0.0192
Parametric Equivalent
BQ24012DRCRG4
Texas Instruments
28182
BQ24012DRCRG4-DG
0.0192
Parametric Equivalent
BQ24014DRCRG4
Texas Instruments
2025
BQ24014DRCRG4-DG
0.0192
MFR Recommended

Reviews

5.0/5.0-(Show up to 5 Ratings)
Lieb***äufer
de desembre 02, 2025
5.0
Für zuverlässige Technik zu einem günstigen Preis ist DiGi Electronics meine erste Wahl.
Ide***euer
de desembre 02, 2025
5.0
Ich kann mich auf die Qualität und die Pünktlichkeit von DiGi Electronics vollständig verlassen.
Moonl***tDream
de desembre 02, 2025
5.0
Received my order in record time and with excellent support from the team.
Brigh***rizons
de desembre 02, 2025
5.0
We have consistently received outstanding support from DiGi Electronics after placing our orders.
LushL***scapes
de desembre 02, 2025
5.0
Reliable shipping ensures my items arrive in perfect condition.
Silen***isper
de desembre 02, 2025
5.0
The support team is proactive—following up after sales to ensure everything is working as expected.
Magi***ments
de desembre 02, 2025
5.0
I admire how quickly my orders arrive and how well those products hold up through repeated use.
Dre***ulse
de desembre 02, 2025
5.0
The customer service team at DiGi Electronics is always ready to assist after purchase.
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Frequently Asked Questions (FAQ)

What are the critical design considerations when replacing a BQ24014DRCR in a space-constrained wearable device with limited PCB real estate?

When replacing the BQ24014DRCR in compact wearable designs, ensure the alternate charger IC supports a 3x3 mm 10-VSON package with an exposed thermal pad and maintains equivalent or better thermal performance. The BQ24014DRCR’s low quiescent current (typically 30 µA) and integrated power path management are critical for battery life and form factor—avoid parts requiring external FETs or large passives. Verify that any substitute (e.g., MCP73831T-2ACI/OT) can deliver up to 1A programmable charge current without exceeding board area limits, and confirm MSL compatibility to prevent reflow-related failures in high-density layouts.

Can the BQ24014DRCR safely charge a lithium-ion cell in a high-vibration industrial environment where thermal cycling between -20°C and 70°C is common?

Yes, the BQ24014DRCR is suitable for such environments due to its robust -40°C to 125°C junction temperature rating and solid-state design with no moving parts. However, ensure proper solder joint reliability by adhering to TI’s recommended land pattern and using SAC305 or similar high-reliability solder. The device includes built-in thermal regulation that reduces charge current if the die exceeds safe temperatures, mitigating overheating risks during sustained operation. For added resilience, pair it with a conformal coating to protect against moisture and particulate ingress, especially since MSL 2 allows only 1 year of floor life after opening.

How does the BQ24014DRCR compare to the MAX77650 in terms of integration and fault handling for single-cell Li-ion applications with USB input?

Unlike the MAX77650—which integrates a PMIC, buck converter, and charger—the BQ24014DRCR is a dedicated linear charger optimized for simplicity and cost in single-cell systems. While the MAX77650 offers higher integration, it requires more external components and has a larger footprint. The BQ24014DRCR excels in fault protection with precise short-circuit and thermal shutdown, and its programmable timer prevents overcharging in case of faulty cells. Choose the BQ24014DRCR when your design prioritizes minimal BOM, low noise (no switching elements), and reliable standalone charging without needing auxiliary power rails.

What risks should I evaluate if using the BQ24014DRCR with a non-TI fuel gauge like the STC3115 in a battery-powered IoT node?

Integrating the BQ24014DRCR with a third-party fuel gauge such as the STC3115 introduces synchronization risks, particularly around end-of-charge detection and state-of-charge (SoC) calibration. The BQ24014DRCR terminates charging based on current taper and timer, but the STC3115 relies on coulomb counting and voltage modeling—mismatched termination logic may cause SoC drift or premature shutdown. To mitigate this, implement a host MCU to reconcile data from both ICs and perform periodic full-charge recalibration. Also verify I²C signal integrity, as the BQ24014DRCR lacks digital communication; you’ll need external monitoring for real-time charge status.

Is it safe to operate the BQ24014DRCR continuously at 16V input in a solar-powered application with voltage spikes up to 18V during transient conditions?

No—the BQ24014DRCR has a maximum supply voltage rating of 16.5V (absolute maximum), and sustained exposure to 18V transients will damage the device. In solar applications with unpredictable input surges, always include a pre-regulator TVS diode (e.g., SMAJ15A) and a series Schottky diode for reverse polarity protection. Alternatively, use a buck pre-regulator like the TPS62130 to clamp input voltage below 15V. Operating near the upper voltage limit also increases power dissipation; ensure adequate copper pour under the exposed pad to maintain junction temperature below 125°C under worst-case ambient conditions.

Quality Assurance (QC)

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BQ24014DRCR CAD Models
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